The SAGAN Project focuses on a critical component for future satellite platforms and payloads: GaN power transistors. These are essential for Spacecraft Electrical Power Systems (EPS), which enable many capabilities we rely on today, such as high-speed communications, GNSS, and scientific payloads. Additionally, satellites have other power systems like motor drivers, RF power amplifier bias networks, instrument supplies, and DC/DC converters, all needing innovation to reduce power consumption and stay competitive globally.
Power transistors are vital for the efficiency of EPS and other systems, allowing the most effective electrical power processing. Recent advancements have led to Gallium Nitride (GaN) transistors, which reduce equipment mass and power consumption.
However, not all transistors can withstand the harsh conditions of space, such as extreme temperatures, vacuum pressure, and radiation. Standard transistors would fail under these conditions, risking mission failure. Therefore, specialized transistors must be designed, manufactured, and qualified for space use.
The SAGAN consortium aims to significantly impact future space missions’ electrical power architectures, enhancing the European Space sector’s competitiveness by leading in GaN technology. GaN transistors will enable more efficient equipment, supporting advanced space missions that provide better science, communications, GNSS services, and security for Europe.
SAGAN offers two main benefits:
* Europe’s Competitiveness: Currently, Europe relies on external parties for GaN technology, which weakens its position. Developing this technology within Europe is crucial for a prosperous future in the space industry.
* Electrical Performance: GaN transistors offer superior characteristics compared to current silicon technology, reducing mass and heat generation. This makes equipment more competitive, essential for future large SATCOM platforms and payloads requiring high power without increasing satellite mass.
SAGAN does two complete rounds of transistor design, manufacturing, and testing to ensure that, by the end of the project, a set of transistors for space applications are available for the next phase of formally qualifying the product.